Model No: 10M08SAE144I7G
Altera 10M08SAE144I7G
Manufacturer: Altera
SEMICON NO.: 10M08SAE144I7G
Package: 144-LQFP
Stock: In stock
Description: MAX 10 FPGA IC 101 387072 8000
SEMICON NO.: 10M08SAE144I7G
Package: 144-LQFP
Stock: In stock
Description: MAX 10 FPGA IC 101 387072 8000
Quantity :
| Mfr | Altera |
| Device Type | FPGA |
| Product Family | MAX 10 |
| Logic Elements / Cells | 8,000 |
| Logic Array Blocks (LABs) | 500 |
| Total RAM Bits | 387,072 bits |
| Maximum User I/O Pins | 101 |
| Maximum Operating Frequency | 450 MHz |
| Supply Voltage (VCC) | 2.85 V to 3.465 V |
| Operating Supply Voltage (Typ) | 3.0 V / 3.3 V |
| Operating Temperature | -40°C to +100°C |
| Package | 144-LQFP |
| Mounting Type | Surface Mount |
| Compliance | RoHS Compliant |
10M08SAE144I7G FPGA
The 10M08SAE144I7G is a non-volatile, instant-on Field Programmable Gate Array (FPGA) from Altera, belonging to the MAX 10 series. Housed in a 144-EQFP, this single-supply device integrates 8,000 logic elements (LEs), 378 Kbits of embedded memory, and one 12-bit 1 MSPS analog-to-digital converter (ADC) with up to 18 dual-function I/O pins. Operating from a 2.85V to 3.465V supply voltage range, it features dual configuration flash enabling dynamic image switching, user flash memory (UFM), and support for the Nios II soft-core embedded processor. The device maintains robust performance across the industrial temperature range of -40°C to +100°C, making it ideal for system management, industrial control, and embedded applications requiring instant-on capability and analog integration.
Applications
• Industrial Control Systems: PLCs, motor drives, machine vision, and industrial networking requiring instant-on reliability and analog sensor integration
• System Management: Server and telecommunications equipment management controllers with remote monitoring and firmware update capabilities
• Automotive Electronics: Infotainment systems, body control modules, and ADAS sensor interfaces benefiting from non-volatile configuration and wide temperature operation
• Medical Devices: Diagnostic imaging equipment, patient monitors, and portable medical instruments requiring deterministic power-on behavior
• Broadcast and Pro AV: Camera control, video processing, and professional audio equipment with real-time signal processing requirements
• Communications Infrastructure: Routers, switches, and base stations for protocol conversion, traffic management, and interface control
• Embedded Computing: Nios II-based systems with custom peripherals, data acquisition, and control functions in space-constrained designs
Altera MAX 10 FPGA Selection Advantages
The 10M08SAE144I7G offers compelling advantages for designers seeking FPGA flexibility with CPLD-like convenience. Its instant-on capability eliminates the hundreds of milliseconds boot delay associated with SRAM-based FPGAs, ensuring deterministic system behavior from power-up—critical for safety-critical industrial and automotive applications. The integrated ADC with 18 analog input channels eliminates separate ADC ICs, reducing BOM cost by up to 40% and PCB area by 50% for mixed-signal designs.
AlternativeCompatible FPGAs
1. 10M08SAE144C8G: Commercial temperature grade (0°C to +85°C) variant with identical 8,000 LEs and ADC for cost-sensitive industrial applications not requiring extended temperature range.
2. 10M08SAU169C8G: 169-pin UBGA package option with 130 I/Os and identical electrical characteristics for applications requiring increased connectivity in compact footprint.
3. 10M08SAF484C8G: 484-pin FBGA variant offering 250 I/Os and enhanced routing for high-density designs requiring maximum I/O expansion.
4. 10M04SAE144C8G: Lower-density 4,000 LE variant in identical 144-EQFP package for cost-optimized designs with reduced logic requirements and full pin compatibility.
5. 10M16SAU169C8G: Higher-density 16,000 LE upgrade path with identical package options for designs outgrowing 10M08 capacity without PCB redesign.
6. EP4CE22F17C8N: Intel Cyclone IV E FPGA offering 22,320 LEs with external configuration memory for applications requiring higher density and lower cost per logic element.
The 10M08SAE144I7G is a non-volatile, instant-on Field Programmable Gate Array (FPGA) from Altera, belonging to the MAX 10 series. Housed in a 144-EQFP, this single-supply device integrates 8,000 logic elements (LEs), 378 Kbits of embedded memory, and one 12-bit 1 MSPS analog-to-digital converter (ADC) with up to 18 dual-function I/O pins. Operating from a 2.85V to 3.465V supply voltage range, it features dual configuration flash enabling dynamic image switching, user flash memory (UFM), and support for the Nios II soft-core embedded processor. The device maintains robust performance across the industrial temperature range of -40°C to +100°C, making it ideal for system management, industrial control, and embedded applications requiring instant-on capability and analog integration.
Applications
• Industrial Control Systems: PLCs, motor drives, machine vision, and industrial networking requiring instant-on reliability and analog sensor integration
• System Management: Server and telecommunications equipment management controllers with remote monitoring and firmware update capabilities
• Automotive Electronics: Infotainment systems, body control modules, and ADAS sensor interfaces benefiting from non-volatile configuration and wide temperature operation
• Medical Devices: Diagnostic imaging equipment, patient monitors, and portable medical instruments requiring deterministic power-on behavior
• Broadcast and Pro AV: Camera control, video processing, and professional audio equipment with real-time signal processing requirements
• Communications Infrastructure: Routers, switches, and base stations for protocol conversion, traffic management, and interface control
• Embedded Computing: Nios II-based systems with custom peripherals, data acquisition, and control functions in space-constrained designs
Altera MAX 10 FPGA Selection Advantages
The 10M08SAE144I7G offers compelling advantages for designers seeking FPGA flexibility with CPLD-like convenience. Its instant-on capability eliminates the hundreds of milliseconds boot delay associated with SRAM-based FPGAs, ensuring deterministic system behavior from power-up—critical for safety-critical industrial and automotive applications. The integrated ADC with 18 analog input channels eliminates separate ADC ICs, reducing BOM cost by up to 40% and PCB area by 50% for mixed-signal designs.
AlternativeCompatible FPGAs
1. 10M08SAE144C8G: Commercial temperature grade (0°C to +85°C) variant with identical 8,000 LEs and ADC for cost-sensitive industrial applications not requiring extended temperature range.
2. 10M08SAU169C8G: 169-pin UBGA package option with 130 I/Os and identical electrical characteristics for applications requiring increased connectivity in compact footprint.
3. 10M08SAF484C8G: 484-pin FBGA variant offering 250 I/Os and enhanced routing for high-density designs requiring maximum I/O expansion.
4. 10M04SAE144C8G: Lower-density 4,000 LE variant in identical 144-EQFP package for cost-optimized designs with reduced logic requirements and full pin compatibility.
5. 10M16SAU169C8G: Higher-density 16,000 LE upgrade path with identical package options for designs outgrowing 10M08 capacity without PCB redesign.
6. EP4CE22F17C8N: Intel Cyclone IV E FPGA offering 22,320 LEs with external configuration memory for applications requiring higher density and lower cost per logic element.